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Behavior of Hollow-Core FRP-Concrete-Steel Columns under Static Cyclic Flexural Loading

机译:空心FRP-混凝土钢柱在静态循环挠性荷载下的行为

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This paper presents the seismic behavior of hollow-core fiber-reinforced polymer (FRP)-concrete-steel (HC-FCS) columns comparable with the conventional RC column. The typical HC-FCS column consists of a concrete shell sandwiched between an outer FRP tube and an inner steel tube. The HC-FCS column represents a compact engineering system; the steel and FRP tubes act together as stay-in-place formworks. The steel tube acts as a flexural and shear reinforcement. This paper studies three large-scale columnsone RC column having a solid cross section and two HC-FCS columns. Each column has an outer diameter of 610mm (24in.) and a shear span-to-diameter ratio of 4.0. The steel tube is embedded into the reinforced concrete footing with an embedded length of 1.6times the steel tube diameter, whereas the FRP tube only confines the concrete shell and truncates at the top of the footing. The HC-FCS columns exhibits high lateral drift reaching 15.2% and fail gradually due to concrete crushing and local steel tube buckling, followed by FRP rupture. The reference RC column fails at a drift of 10.9% due to rebar fracture. Simple beam theory overpredicts the flexural strength of the columns by an average of 9%.
机译:本文介绍了可与常规RC柱相比的空心纤维增强聚合物(FRP)-混凝土(HC-FCS)柱的抗震性能。典型的HC-FCS色谱柱由夹在外部FRP管和内部钢管之间的混凝土壳组成。 HC-FCS列表示一个紧凑的工程系统;钢管和FRP管一起充当固定模板。钢管用作抗弯和抗剪钢筋。本文研究了三个大型色谱柱,一个具有实心截面的RC色谱柱和两个HC-FCS色谱柱。每列的外径为610毫米(24英寸),剪切跨径比为4.0。钢管埋入钢筋混凝土底座中,埋入长度为钢管直径的1.6倍,而FRP管仅限制混凝土壳体并在底座顶部截断。 HC-FCS立柱显示出高的侧向漂移,达到15.2%,并且由于混凝土压碎和局部钢管屈曲,随后FRP破裂而逐渐失效。由于钢筋断裂,参考RC色谱柱的漂移为10.9%。简单梁理论高估了柱子的抗弯强度,平均为9%。

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